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首页> 外文期刊>Molecular biology of the cell >Loading of the 3F3/2 antigen onto kinetochores is dependent on the ordered assembly of the spindle checkpoint proteins
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Loading of the 3F3/2 antigen onto kinetochores is dependent on the ordered assembly of the spindle checkpoint proteins

机译:将3F3 / 2抗原加载到动植物上取决于纺锤体检查点蛋白的有序组装

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摘要

Accurate chromosome segregation is controlled by the spindle checkpoint, which responds to the lack of microtubule-kinetochore attachment or of tension across sister kinetochores through phosphorylation of kinetochore proteins by the Mps1, Bub1, BubR1, Aurora B, and Plk1/Plx1 kinases. The presence of the 3F3/2 phosphoepitope on kinetochores, generated by Plk1/Plx1-mediated phosphorylation of an unknown protein, correlates with the activation of the tension-sensitive checkpoint pathway. Using immunodepletion approach and a rephosphorylation assay in Xenopus extracts, we report here that not only the formation of the 3F3/2 phosphoepitope is dependent on the checkpoint activation but also the loading of the 3F3/2 substrate to kinetochores requires the prior assembly of Mps1, Bub1 and BubR1 onto kinetochores. Interestingly, generation of the 3F3/2 epitope in checkpoint extracts requires the kinase activities of Mps1 and Bub1 but not that of BubR1. Furthermore, we demonstrate that checkpoint proteins in Xenopus extracts are assembled onto kinetochores in a highly ordered pathway consisting of three steps. Mps1 and Bub1 are loaded first, and BubR1 and Plx1 second, followed by Mad1 and Mad2. The characterization of this ordered assembly pathway provides a framework for the biochemical mechanism of the checkpoint signaling and will aid in the eventual identification of the 3F3/2 substrate.
机译:精确的染色体分离受纺锤体检查点控制,纺锤体检查点通过Mps1,Bub1,BubR1,Aurora B和Plk1 / Plx1激酶使动线粒蛋白磷酸化,从而响应微管-线粒体附着的缺失或跨姐妹动粒体的张力。由Plk1 / Plx1介导的未知蛋白的磷酸化产生的动植物体上3F3 / 2磷酸表位的存在与张力敏感检查点途径的激活有关。在非洲爪蟾提取物中使用免疫耗竭方法和重新磷酸化测定,我们在这里报告不仅3F3 / 2磷酸表位的形成取决于检查点的激活,而且3F3 / 2底物向动植物的负载还需要事先组装Mps1,将Bub1和BubR1连接到动植物上。有趣的是,在检查点提取物中生成3F3 / 2表位需要Mps1和Bub1的激酶活性,而不是BubR1的激酶活性。此外,我们证明非洲爪蟾提取物中的检查点蛋白质以高度有序的途径(包括三个步骤)组装到动植物上。首先加载Mps1和Bub1,然后加载BubR1和Plx1,然后加载Mad1和Mad2。该有序组装途径的表征为检查点信号传导的生化机制提供了框架,并将有助于最终鉴定3F3 / 2底物。

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